Source: David C. Powers, Tamara M. Powers, Texas A&M
In this video, we will learn the basic principles behind Electron Paramagnetic Resonance (EPR). We will use EPR spectroscopy to study how dibutylhydroxy toluene (BHT) behaves as an antioxidant in the autoxidation of aliphatic aldehydes.
1. Autoxidation of Butyraldehyde
The autoxidation of butyraldehyde affords butyric acid. The 1H NMR spectrum obtained from the reaction carried out in Step 1 shows the lack of an aldehydic C-H resonance and the presence of the resonances expected of butyric acid. In contrast, the NMR obtained from the reaction mixture from step 2 (with added BHT) displays signals consistent with butyraldehyde, with no butyric acid present. From these data, we observe the butyraldehyde has served as an antioxidant in aldehyde a
In this experiment, we explored the role of antioxidants in inhibiting autoxidation chemistry. We probed the mechanism of inhibition using EPR spectroscopy, which revealed that BHT serves as an antioxidant by quenching reactive radical intermediates via H-atom transfer.
Molecules with unpaired electrons can be challenging to characterize by NMR and thus EPR spectroscopy frequently provides useful and complementary information regarding these species. EPR spectroscopy is an experimental techni
Перейти к...
Видео из этой коллекции:
Now Playing
Inorganic Chemistry
25.3K Просмотры
Inorganic Chemistry
31.5K Просмотры
Inorganic Chemistry
18.6K Просмотры
Inorganic Chemistry
54.3K Просмотры
Inorganic Chemistry
67.9K Просмотры
Inorganic Chemistry
103.8K Просмотры
Inorganic Chemistry
21.9K Просмотры
Inorganic Chemistry
38.7K Просмотры
Inorganic Chemistry
79.0K Просмотры
Inorganic Chemistry
44.9K Просмотры
Inorganic Chemistry
35.1K Просмотры
Inorganic Chemistry
15.3K Просмотры
Inorganic Chemistry
15.6K Просмотры
Inorganic Chemistry
51.4K Просмотры
Inorganic Chemistry
16.7K Просмотры
Авторские права © 2025 MyJoVE Corporation. Все права защищены